EP2257363B1 - Système de filtration préstérilisé pour utilisation unique - Google Patents
Système de filtration préstérilisé pour utilisation unique Download PDFInfo
- Publication number
- EP2257363B1 EP2257363B1 EP09723090A EP09723090A EP2257363B1 EP 2257363 B1 EP2257363 B1 EP 2257363B1 EP 09723090 A EP09723090 A EP 09723090A EP 09723090 A EP09723090 A EP 09723090A EP 2257363 B1 EP2257363 B1 EP 2257363B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- filtration
- presterilizable
- valve
- hose
- container
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D61/00—Processes of separation using semi-permeable membranes, e.g. dialysis, osmosis or ultrafiltration; Apparatus, accessories or auxiliary operations specially adapted therefor
- B01D61/14—Ultrafiltration; Microfiltration
- B01D61/18—Apparatus therefor
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M1/00—Suction or pumping devices for medical purposes; Devices for carrying-off, for treatment of, or for carrying-over, body-liquids; Drainage systems
- A61M1/36—Other treatment of blood in a by-pass of the natural circulatory system, e.g. temperature adaptation, irradiation ; Extra-corporeal blood circuits
- A61M1/3621—Extra-corporeal blood circuits
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M1/00—Suction or pumping devices for medical purposes; Devices for carrying-off, for treatment of, or for carrying-over, body-liquids; Drainage systems
- A61M1/36—Other treatment of blood in a by-pass of the natural circulatory system, e.g. temperature adaptation, irradiation ; Extra-corporeal blood circuits
- A61M1/3601—Extra-corporeal circuits in which the blood fluid passes more than once through the treatment unit
- A61M1/3603—Extra-corporeal circuits in which the blood fluid passes more than once through the treatment unit in the same direction
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2313/00—Details relating to membrane modules or apparatus
- B01D2313/18—Specific valves
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2313/00—Details relating to membrane modules or apparatus
- B01D2313/24—Specific pressurizing or depressurizing means
- B01D2313/243—Pumps
Definitions
- the invention relates to a disposable filtration system for single use, comprising at least one container and at least one filtration module, which are connected to one another via a hose system that can be regulated by at least one valve.
- the filtration systems consist of a hose system connected to a filtration module that is connected to a recirculation tank via aseptic connections.
- the tube system or the medium transported in the tube system from the filtration module to the recirculation container can be regulated via a pinch valve.
- the object of the present invention is to improve the known single-use pre-sterilizable filtration system in such a way that it can be pre-sterilized for ready-to-use packaging and can be used both on a laboratory scale and on a production scale in an automated filtration system.
- valve is divided into a separate valve member for single use and in a reusable actuator, as well as in the WO 97/40867 discloses the separate valve member can be optimized regardless of the wall thickness of the hose with respect to its closing function.
- the two-part valve can be easily used both on a laboratory scale and on a production scale and controlled via the actuator in conjunction with appropriate sensors.
- the valve member may be formed as a flap valve, a slide valve or, for example, a diaphragm valve.
- the at least one container is a recirculation container, which with the at least one filtration module and the hose system forms a circuit.
- a pump is arranged between the container or recirculation container and the filtration module, which is formed from a single-use pump part which can be integrated into the tube system and from a reusable pump drive.
- the pump part as a replaceable pump head of a centrifugal pump or a pressure piston / rotary piston pump, as z. B. from the GB 2 440 944 A is known to be trained.
- the pump part as an exchangeable pump head of a diaphragm pump, as they are known from DE 20 2006 020 237.4 has become known.
- the container or recirculation container is designed as a flexible bag.
- the container or the recirculation container or the flexible bag may be firmly connected to the tube system.
- This has the advantage that it is possible to dispense with aseptic or sterile connections, in any case for the main connection to the recirculation container.
- a subsequent liquid-tight separation of the recirculation container or, for example, a permeate container can be effected in a manner known per se by severing the connecting tube with a welding apparatus, the two tube ends being closed by welding.
- the container or recirculation container is equipped in a preferred embodiment of the invention with a degassing / degassing filter with pressure sensor with reusable transducer or with a safety valve that protects the container or recirculation tank from mechanical destruction by inadmissible overpressure or from unwanted collapse.
- the permeate outlet of the at least one filtration module and a permeate container via a Permeatschlauch ein are firmly connected.
- a valve may be arranged is formed from a separate valve part for single use and from a reusable actuator.
- measuring points are arranged in the tube system and / or the permeate tube line, which are each subdivided into a measuring cell which is integrated into the tube system and / or the permeate tube line for single use and a reusable measuring transducer.
- the product- or media-wetted parts of the measuring points can thus be easily presterilized and disposed of with the entire hose system.
- the transducers or transmitters remain in the filtration system.
- the measuring cells can be designed as sensors for pressure, flow, temperature, level, pH, conductivity, optical density, oxygen partial pressure and UV measurement and forward their signals via the transducers to a computing and control unit ,
- the filtration module is designed as a dead-end filtration module.
- Suitable filtration modules are in particular filter capsules with hollow-fiber membranes, flat membranes, membrane adsorbers and depth filters for the field of ultrafiltration and microfiltration, including virus filters.
- the filtration module is flown as a tangential Trained cross-flow filter.
- the cross-flow filter is designed, for example, as a membrane cassette stack.
- Membrane cassettes with hollow-fiber membranes, flat membranes, membrane adsorbers and depth filters for the field of ultrafiltration and microfiltration, including virus filters, are particularly suitable as filtration modules.
- the filtration modules are designed for single use, ie as disposable items.
- Aseptic standard connections on the tank or recirculation tank can be used to supply additional media to the system with the aid of external units.
- the pre-sterilizable filtration system is sterilized to the operator and packaged in a sterile environment.
- the filtration system can be aseptically installed and operated in the filtration system.
- This filtration can be operated aseptically or sterile with disposable products, after filtration can be disposed of all product-contacted components as a closed system. A leakage of media from the system is thus excluded for the protection of the operator.
- the remaining filtration system with the data acquisition and visualization for example via a screen, which is preferably designed as a touch screen (touch screen), and the mechanical supply units are equipped in subsequent production cycles with a new sterile filtration system.
- All measuring points or measuring cells can be pre-calibrated to the operator as part of the filtration system.
- the pre-sterilisable filtration system is sterile packed as a closed system. All components of the customer-supplied filtration system can be sterilized, with sterilization preferably by gamma-irradiation.
- the filtration system 1 consists essentially of a pre-sterilizable filtration system 2 for single use and reusable parts 3 including a computing and control unit 4 with a screen 5 for visualization.
- the filtration system 2 is designed for single use and consists essentially of a recirculation tank 6 and a filtration module 7, which are connected to each other via a hose system 8 in a circuit 9. Between the recirculation tank 6 and the filtration module 7, a pump 10 is arranged to circulate the medium to be filtered. Between the filtration module 7 and the recirculation tank 6, a valve 11 that can be controlled by the computing and control unit 4 is arranged in the hose system 8 or circuit 9.
- the valve 11 consists of a separate valve member 12, with a variable passage through which the medium is passed, and from a connectable to the valve member 12 actuator 13, which forms a reusable part of the plant 3.
- the actuator 13 is connected to the computing and control unit 4 and is controlled by this.
- the valve member 12 is formed, for example, as a non-illustrated flap valve.
- the pump 10 is likewise designed in two parts and consists of a single-use pump part 14 which can be integrated into the hose system 8 and of a reusable pump drive 15 which forms a reusable part of the installation and which is likewise connected to the computer and control unit 4 and controlled by it.
- the pump part 14 is formed, for example, as a non-illustrated pump head of a centrifugal pump.
- the recirculation tank 6 is formed as a flexible bag and fixed with a leading to the pump part 14 flow hose 16 and one of the filtration module. 7 recirculating return hose 17 of the circuit 9 firmly connected.
- the filtration module 7 is connected to the circuit 9.
- the permeate outlets of the filtration module 7 are connected to a permeate hose line 20, which leads to a permeate container, not further shown.
- a separate valve member 12 and / or another controllable valve 11 is integrated.
- a sterile connector 21 is arranged, via which the permeate can be coupled sterile or sterile or at least replaced aseptically.
- the permeate container is fixedly connected to the permeate hose line 20.
- the recirculation tank 6 has at its upper end two hose connections 22, 23, which are closed at their ends by sterile connectors 21 and can be supplied via the optionally with the help of other pumps 10 media. At its lower end, the recirculation tank 6 has two further hose connections 24, 25, which are likewise closed off by sterile connectors 21 and can be connected to the containers, not shown in each case, in order to receive medium from the recirculation container 6.
- a further tube 26 arranged at the lower end of the recirculation container 6 is connected to a measuring point 27, which is subdivided into a measuring cell 28 which is integrated into the tube system 8 for single use and a reusable measuring transducer 29.
- the transducer 29 is connected in each case via a signal line 30 to the computing and control unit 4.
- the container 6 or recirculation container is equipped with a degassing / degassing filter 18 with a safety valve 19.
- the measuring cell 28 integrated in the tube 26 is designed as a temperature sensor 31.
- a further measuring point 27 is arranged between the pump 10 and the filtration module 7, the measuring cell 28 of which is designed as a pressure sensor 32.
- two further measuring points 27 are arranged in the circuit 9 between the controllable valve 11 and the filtration module 7.
- a measuring cell 28 is designed as a pressure sensor 32 and a further measuring cell 28 as a flow meter 33.
- the permeate hose 20 also two measuring points 27 are arranged, wherein the measuring cell 28 of the one as a pressure sensor 32 and the measuring cell 28 of the other measuring point 27 is formed as a flow meter 33.
- a further controllable valve 11 is arranged in the permeate hose line 20.
- the recirculation tank 6 is connected to a weighing module 34, which determines the weight in the recirculation tank 6 and forwards it to the computing and control unit 4.
- the signal of the weighing module 34 can also be used as a fill level signal.
- the filtration system 2 is pre-sterilized as a complete interconnected system and delivered in sterile outer packaging. The operator then only has to remove the filtration system 2 from its outer packaging, not shown, and into the Insert filtration system 1 and connect the disposable parts of the valves 11, pumps 10 and measuring points 27 with their remaining in the filtration plant 1 counterparts.
- All measuring cells 28 of the measuring points 27 are made available to the operator precalibrated.
Landscapes
- Health & Medical Sciences (AREA)
- Engineering & Computer Science (AREA)
- Vascular Medicine (AREA)
- Water Supply & Treatment (AREA)
- Heart & Thoracic Surgery (AREA)
- Anesthesiology (AREA)
- Animal Behavior & Ethology (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Chemical & Material Sciences (AREA)
- Biomedical Technology (AREA)
- Hematology (AREA)
- Life Sciences & Earth Sciences (AREA)
- Cardiology (AREA)
- General Health & Medical Sciences (AREA)
- Public Health (AREA)
- Veterinary Medicine (AREA)
- Separation Using Semi-Permeable Membranes (AREA)
- External Artificial Organs (AREA)
- Apparatus Associated With Microorganisms And Enzymes (AREA)
Abstract
Claims (15)
- Système de filtration préstérilisable (2) pour utilisation unique ayant au moins un contenant (6) et au moins un module de filtration (7) raccordés l'un à l'autre par un système de flexible (8) réglable par au moins une vanne (11),
caractérisé en ce que la vanne réglable (11) est constituée d'une partie vanne (12) pour utilisation unique intégrée au système de flexible (8), ladite partie vanne étant séparée du système de flexible (8) et ayant un passage variable, et d'un actionneur réutilisable (13),
caractérisé en ce que des points de mesure (27) sont disposés dans le système de flexible (8), chacun étant subdivisé en une cellule de mesure (28) pour utilisation unique intégrée au système de flexible et en un enregistreur de mesures (29) réutilisable,
caractérisé en ce qu'une pompe (10) est disposée entre la cuve (6) ou cuve de recirculation au nombre minimum de 1 et le module de filtration (7) au nombre minimum de 1, ladite pompe étant constituée d'une partie pompe (14) pour utilisation unique intégrée au système de flexible (8) et d'un entraînement de pompe (15) réutilisable, et
caractérisé en ce que le système de filtration est conditionné de façon stérile en tant que système clos et peut être incorporé aseptiquement en bloc dans une installation de filtration. - Système de filtration préstérilisable selon la revendication 1,
caractérisé en ce que la cuve (6) au nombre minimum de 1 est une cuve de recirculation qui forme un circuit (9) conjointement avec le module de filtration (7) au nombre minimum de 1 et le système de flexible (8). - Système de filtration préstérilisable selon la revendication 1 ou 2,
caractérisé en ce que la partie vanne (12) est configurée en tant que vanne à clapet, vanne à membrane, vanne à boisseau sphérique, vanne à siège ou vanne à coulisse. - Système de filtration préstérilisable selon l'une quelconque des revendications 1 à 3,
caractérisé en ce que la partie pompe (14) est configurée en tant que tête de pompe interchangeable d'une pompe à piston à pression, d'une pompe à piston rotatif, d'une pompe centrifuge ou d'une pompe à membrane. - Système de filtration préstérilisable selon l'une quelconque des revendications 1 à 4,
caractérisé en ce que la cuve (6) ou cuve de recirculation au nombre minimum de 1 est configurée en tant que sac souple. - Système de filtration préstérilisable selon l'une quelconque des revendications 1 à 5,
caractérisé en ce que la cuve (6) ou cuve de recirculation au nombre minimum de 1 est raccordée au système de flexible (8) par un raccord fixe, et en ce que la cuve (6) ou cuve de recirculation au nombre minimum de 1 peut être séparé du système de flexible (8) de manière étanche aux liquides avec un dispositif de soudage. - Système de filtration préstérilisable selon l'une quelconque des revendications 1 à 6,
caractérisé en ce que la sortie de perméat du module de filtration (7) au nombre minimum de 1 et une cuve perméat sont fixées l'une à l'autre par une conduite de perméat (20). - Système de filtration préstérilisable selon la revendication 7,
caractérisé en ce que, dans la conduite de perméat (20), une vanne (11) est constituée d'une partie vanne (12) séparée pour utilisation unique et d'un actionneur (13) réutilisable. - Système de filtration préstérilisable selon la revendication 1,
caractérisé en ce que le module de filtration (7) au nombre minimum de 1 est configuré en tant que module de filtration en cul-de-sac. - Système de filtration préstérilisable selon la revendication 9,
caractérisé en ce que le module de filtration en cul-de-sac (7) est configuré comme une capsule filtrante. - Système de filtration préstérilisable selon la revendication 1
caractérisé en ce que le module de filtration (7) au nombre minimum de 1 est configuré en tant que filtre transversal à courant tangentiel. - Système de filtration préstérilisable selon la revendication 11,
caractérisé en ce que le filtre transversal (7) est configuré en tant que pile de cartouches à membrane. - Système de filtration préstérilisable selon l'une quelconque des revendications 1 à 12,
caractérisé en ce que le module de filtration (7) au nombre minimum de 1 contient des membranes de filtration sous forme de fibres creuses, de membranes plates ou d'adsorbeurs à membrane au niveau de l'ultrafiltration ou de la microfiltration. - Système de filtration préstérilisable selon la revendication 1,
caractérisé en ce que la cuve (6) ou cuve de recirculation au nombre minimum de 1 est équipé d'une vanne de sûreté pour utilisation unique. - Système de filtration préstérilisable selon l'une quelconque des revendications 1 à 14,
caractérisé en ce que l'ensemble du système de filtration peut être stérilisé par des rayons gamma.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102008015387.7A DE102008015387B4 (de) | 2008-03-20 | 2008-03-20 | Vorsterilisierbares Filtrationssystem zum Einmalgebrauch |
| PCT/EP2009/001829 WO2009115242A1 (fr) | 2008-03-20 | 2009-03-13 | Système de filtration préstérilisable pour utilisation unique |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP2257363A1 EP2257363A1 (fr) | 2010-12-08 |
| EP2257363B1 true EP2257363B1 (fr) | 2012-05-16 |
| EP2257363B2 EP2257363B2 (fr) | 2019-02-27 |
Family
ID=40688565
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP09723090.8A Active EP2257363B2 (fr) | 2008-03-20 | 2009-03-13 | Système de filtration préstérilisé pour utilisation unique |
Country Status (4)
| Country | Link |
|---|---|
| US (1) | US10766003B2 (fr) |
| EP (1) | EP2257363B2 (fr) |
| DE (2) | DE102008015387B4 (fr) |
| WO (1) | WO2009115242A1 (fr) |
Families Citing this family (21)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102009033401B3 (de) * | 2009-07-15 | 2011-04-21 | Sartorius Stedim Biotech Gmbh | Schlauchsystem |
| DE102010060302A1 (de) | 2010-11-02 | 2012-05-03 | Sartorius Weighing Technology Gmbh | Verfahren zur Zusammenstellung und Überwachung einer aus einer Mehrzahl von austauschbaren Systemkomponenten bestehenden Systemanordnung |
| DE102011076806A1 (de) * | 2011-05-31 | 2012-12-06 | Leibniz-Institut für Plasmaforschung und Technologie e.V. | Vorrichtung und Verfahren zur Erzeugung eines kalten, homogenen Plasmas unter Atmosphärendruckbedingungen |
| EP2973103B1 (fr) * | 2013-03-15 | 2019-05-08 | Parker-Hannifin Corporation | Tuyeau collecteur avec capteur a usage unique pour bioréacteurs |
| US10451591B1 (en) * | 2013-12-19 | 2019-10-22 | Ge Healthcare Bio-Sciences Ab | Remotely actuated valve for a biological liquid treatment system |
| CN105814352B (zh) | 2013-12-19 | 2019-01-04 | 通用电气健康护理生物科学股份公司 | 用于生物液体加工系统的远程促动阀 |
| WO2015195453A2 (fr) | 2014-06-16 | 2015-12-23 | Emd Millipore Corporation | Procédés pour augmenter la capacité de processus à écoulement continu |
| EP4144434B1 (fr) * | 2014-06-16 | 2024-04-17 | EMD Millipore Corporation | Systèmes et procédés de filtration à passage unique |
| WO2015195452A2 (fr) * | 2014-06-16 | 2015-12-23 | Emd Millipore Corporation | Systèmes et procédés de filtration à simple passage |
| EP2957335B1 (fr) * | 2014-06-16 | 2020-05-27 | EMD Millipore Corporation | Systèmes et processus de filtration monopasse |
| KR101938948B1 (ko) | 2014-06-25 | 2019-01-15 | 이엠디 밀리포어 코포레이션 | 밀집한 나권형 필터 엘리먼트, 모듈 및 시스템 |
| WO2016033553A1 (fr) | 2014-08-29 | 2016-03-03 | Emd Millipore Corporation | Procédés de filtration de liquides en utilisant des systèmes de filtration à écoulement tangentiel à passage unique et des systèmes de filtration à écoulement tangentiel avec recirculation de rétentat |
| WO2016033546A1 (fr) | 2014-08-29 | 2016-03-03 | Emd Millipore Corporation | Systèmes de filtration à écoulement tangentiel à passage unique et systèmes de filtration à écoulement tangentiel avec recirculation de rétentat |
| US9933118B2 (en) * | 2015-04-07 | 2018-04-03 | Sartorius Stedim Biotech Gmbh | Single use container, system and method for the prevention of over-pressurization |
| WO2017029307A1 (fr) * | 2015-08-20 | 2017-02-23 | Ge Healthcare Bio-Sciences Ab | Procédé amélioré pour augmenter les rendements de filtration dans un système de filtration à flux tangentiel |
| US12226737B2 (en) | 2016-06-09 | 2025-02-18 | Emd Millipore Corporation | Radial-path filter elements, systems and methods of using same |
| DE102017110482A1 (de) * | 2017-05-15 | 2018-11-15 | Sartorius Stedim Biotech Gmbh | Filtrationsmodul bzw. Reinigungsmodul für modulares Filtrationssystem |
| DE102017127933A1 (de) * | 2017-11-27 | 2019-05-29 | Sartorius Stedim Biotech Gmbh | Einweg-Vorrichtung zur Filtration eines großen Mediumvolumens |
| CN111603628B (zh) * | 2020-07-17 | 2024-09-03 | 刘燕 | 一种心脏手术体外循环用贮血装置 |
| KR20230158083A (ko) | 2021-04-16 | 2023-11-17 | 리플리겐 코포레이션 | 여과 시스템 및 방법 |
| CN115228293A (zh) * | 2022-06-24 | 2022-10-25 | 成器智造(北京)科技有限公司 | 模块化超滤系统 |
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| US3626938A (en) | 1970-06-30 | 1971-12-14 | Antonio A Versaci | Hemodialysis shunt valve device with body connecting means |
| US4366051A (en) * | 1976-11-19 | 1982-12-28 | Halbert Fischel | Hemodialysis system |
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| US4865581A (en) * | 1987-05-29 | 1989-09-12 | Retroperfusion Systems, Inc. | Retroperfusion control apparatus, system and method |
| US5186431A (en) | 1989-09-22 | 1993-02-16 | Yehuda Tamari | Pressure sensitive valves for extracorporeal circuits |
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| AU6353900A (en) | 1999-07-29 | 2001-02-19 | Sysflow Medical, Inc. | Blood treatment system providing pulsatile flow and method of use |
| US6585675B1 (en) * | 2000-11-02 | 2003-07-01 | Chf Solutions, Inc. | Method and apparatus for blood withdrawal and infusion using a pressure controller |
| DE10115991C1 (de) * | 2001-03-30 | 2002-04-18 | Fresenius Medical Care De Gmbh | Verfahren und Vorrichtung zum Erkennen von Stenosen in einem Schlauchleitungssystem |
| DE60238523D1 (de) * | 2001-04-11 | 2011-01-20 | Bekaert Sa Nv | Filtervorrichtung |
| US20040063169A1 (en) * | 2002-02-05 | 2004-04-01 | Jeffrey Kane | Filtration assembly |
| US6712963B2 (en) | 2002-06-14 | 2004-03-30 | Scilog, Llc | Single-use manifold for automated, aseptic transfer of solutions in bioprocessing applications |
| US7238164B2 (en) | 2002-07-19 | 2007-07-03 | Baxter International Inc. | Systems, methods and apparatuses for pumping cassette-based therapies |
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| JP4518918B2 (ja) * | 2003-11-20 | 2010-08-04 | ミリポア・コーポレイション | 流体分注デバイス |
| BRPI0510369B1 (pt) * | 2004-04-27 | 2018-05-02 | Vital Therapies, Inc. | Sistema de detoxificação metabólica |
| JP2008514385A (ja) * | 2004-09-30 | 2008-05-08 | 富士フイルム株式会社 | 多連カートリッジ及びカートリッジ配列フレーム |
| WO2006122268A2 (fr) † | 2005-05-10 | 2006-11-16 | Pendotech | Pompe a membrane sanitaire pour applications dans des processus biologiques critiques |
| US8920645B2 (en) † | 2005-12-07 | 2014-12-30 | Tarpon Biosystems Inc. | Disposable chromatography valves and system |
| US7704212B2 (en) * | 2006-06-14 | 2010-04-27 | Spacelabs Healthcare | Reusable invasive fluid pressure monitoring apparatus and method |
| GB2440944B (en) | 2006-08-11 | 2011-10-12 | Itt Mfg Enterprises Inc | Rotary lobe pump |
| DE202006020237U1 (de) | 2006-10-25 | 2008-02-21 | Quattroflow Fluid Systems Gmbh & Co. Kg | Membranpumpe |
-
2008
- 2008-03-20 DE DE102008015387.7A patent/DE102008015387B4/de active Active
-
2009
- 2009-03-13 US US12/933,433 patent/US10766003B2/en active Active
- 2009-03-13 WO PCT/EP2009/001829 patent/WO2009115242A1/fr not_active Ceased
- 2009-03-13 EP EP09723090.8A patent/EP2257363B2/fr active Active
- 2009-03-14 DE DE202009003680U patent/DE202009003680U1/de not_active Expired - Lifetime
Also Published As
| Publication number | Publication date |
|---|---|
| EP2257363B2 (fr) | 2019-02-27 |
| DE102008015387A1 (de) | 2009-09-24 |
| DE102008015387B4 (de) | 2019-01-10 |
| US20110005984A1 (en) | 2011-01-13 |
| DE202009003680U1 (de) | 2009-08-06 |
| EP2257363A1 (fr) | 2010-12-08 |
| US10766003B2 (en) | 2020-09-08 |
| WO2009115242A1 (fr) | 2009-09-24 |
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